교수소개

조교수

송광훈
직책/직급
조교수
주전공
Micro/Nanofabrication, cell migration, biomaterials
담당과목
의공학, 생체조직공학, 생체역학분석및응용, 바이오이미징공학, 나노기초실험(2)
전화번호
032-835-8275
이메일
khsong@inu.ac.kr
홈페이지
https://zep27th.wixsite.com/songlab
학력

2015.08.14 포항공과대학교  (공학박사)

2011.02.11 포항공과대학교  (공학석사)

2009.02.20 서울시립대학교  (공학사)

경력

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연구실적
<논문> 

Effect of lyophilized gelatin-norbornene cryogel size on calvarial bone regeneration, Materials Today Bio , 제23권(집) , PP.100868~ , 2023.12.01

Fibrous hydrogels by electrospinning: Novel platforms for biomedical applications, Journal of Tissue Engineering , 제14권(집) , PP.20417314231191881~ , 2023.08.22

Jammed microgels fabricated via various methods for biological studies, KOREAN JOURNAL OF CHEMICAL ENGINEERING , 제40권(집) , 제2호 , PP.267~275 , 2023.02.01

Jammed Microgel-Based Inks for 3D Printing of Complex Structures Transformable via pH/Temperature Variations, MACROMOLECULAR RAPID COMMUNICATIONS , 제43권(집) , 제19호 , 2022.10.01

Microfabricated platforms for the analysis of immune cell migration under complex microenvironments, JMST Advances , 제3권(집) , PP.1~9 , 2021.02.04

Engineered Full-Length Fibronectin-Hyaluronic Acid Hydrogels for Stem Cell Engineering , Advanced Healthcare Materials , 제9권(집) , 제21호 , PP.2000989~ , 2020.11.04

Biomaterial-based strategies to prime dendritic cell-mediated anti-cancer immune responses, INTERNATIONAL MATERIALS REVIEWS , 제65권(집) , 제7호 , PP.445~462 , 2020.10.02

Nuclear softening expedites interstitial cell migration in fibrous networks and dense connective tissues, Science Advances , 제6권(집) , 제25호 , 2020.06.19

Influence of Fiber Stiffness on Meniscal Cell Migration into Dense Fibrous Networks, Advanced Healthcare Materials , 제9권(집) , 제8호 , 2020.04.22

Injectable and Conductive Granular Hydrogels for 3D Printing and Electroactive Tissue Support, Advanced Science , 제6권(집) , 제20호 , 2019.10.01

Engineered fibrous networks to investigate the influence of fiber mechanics on myofibroblast differentiation, ACS Biomaterials Science & Engineering , 제5권(집) , 제8호 , PP.3899~3908 , 2019.08.01

Jammed Microgel Inks for 3D Printing Applications, Advanced Science , 제6권(집) , 제1호 , 2019.01.09

Complex 3D‐Printed Microchannels within Cell‐Degradable Hydrogels, ADVANCED FUNCTIONAL MATERIALS , 2018.08.01

Ultra-thin, aligned, free-standing nanofiber membranes to recapitulate multi-layered blood vessel/tissue interface for leukocyte infiltration study, BIOMATERIALS , 제169권(집) , PP.22~34 , 2018.07.01

Combinatorial hydrogels with biochemical gradients for screening 3D cellular microenvironments, Nature Communications , 제9권(집) , 2018.02.09

Endothelial Cell Focal Adhesion Regulates Transendothelial Migration and Subendothelial Crawling of T Cells, Frontiers in Immunology , 제9권(집) , 2018.01.24

Turning behaviors of T cells climbing up ramp-like structures are regulated by myosin light chain kinase activity and lamellipodia formation, Scientific Reports , 제7권(집) , 2017.09.14

Roles of endothelial A-type lamins in migration of T cells on and under endothelial layers, Scientific Reports , 제6권(집) , 2016.03.21

Dynamic Micropatterning of Cells on Nanostructured Surfaces Using a Cell-friendly Photoresist, ACS Applied Materials & Interfaces , 제8권(집) , 제6호 , PP.4266~4274 , 2016.02.17

Sinusoidal wavy surfaces for curvature-guided migration of T lymphocytes, BIOMATERIALS , 제51권(집) , PP.151~160 , 2015.05.01

Homotypic NK cell-to-cell communication controls cytokine responsiveness of innate immune NK cells, Scientific Reports , 제4권(집) , 2014.12.05

Geometrically controlled asymmetric division of CD4+ T cells studied by immunological synapse arrays, PLoS One , 제9권(집) , 제3호 , 2014.03.14

T cells sense biophysical cues using lamellipodia and filopodia to optimize intraluminal path finding, Integrative Biology , 제6권(집) , 제4호 , PP.450~459 , 2014.03.06

PDMS bonding to a bio-friendly photoresist via self-polymerized poly (dopamine) adhesive for complex protein micropatterning inside microfluidic channels, COLLOIDS AND SURFACES B-BIOINTERFACES , 제112권(집) , PP.134~138 , 2013.12.01

Nanotopography-guided migration of T cells, JOURNAL OF IMMUNOLOGY , 제189권(집) , 제5호 , PP.2266~2273 , 2012.09.01

Dynamics of T cells on endothelial layers aligned by nanostructured surfaces, BIOMATERIALS , 제33권(집) , 제7호 , PP.2007~2015 , 2012.03.01